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Título: | Mitochondria-targeted melatonin photorelease supports the presence of melatonin MT1 receptors in mitochondria inhibiting respiration |
Autor: | Somalo-Barranco, Gloria; Pagano Zottola, Antonio C.; Abdulrahman, Abdulrasheed O.; El Zein, Rami M; Cannich, Astrid; Muñoz, Lourdes CSIC ORCID; Serra, Carmen CSIC ORCID; Oishi, Atsuro; Marsicano, Giovanni; Masri, Bernard; Bellocchio, Luigi; Llebaria, Amadeu CSIC ORCID; Jockers, Ralf | Palabras clave: | Photopharmacology G protein-coupled receptors Intracellular signaling Melatonin Melatonin receptors Mitochondria Mitochondria-targeted caged melatonin ligand Mitochondrial respiration |
Fecha de publicación: | 17-ago-2023 | Editor: | Elsevier | Citación: | Cell Chemical Biology 30 (8): 920-932.e7 (2023) | Resumen: | The presence of signaling-competent G protein-coupled receptors in intracellular compartments is increasingly recognized. Recently, the presence of Gi/o protein-coupled melatonin MT1 receptors in mitochondria has been revealed, in addition to the plasma membrane. Melatonin is highly cell permeant, activating plasma membrane and mitochondrial receptors equally. Here, we present MCS-1145, a melatonin derivative bearing a triphenylphosphonium cation for specific mitochondrial targeting and a photocleavable o-nitrobenzyl group releasing melatonin upon illumination. MCS-1145 displayed low affinity for MT1 and MT2 but spontaneously accumulated in mitochondria, where it was resistant to washout. Uncaged MCS-1145 and exogenous melatonin recruited β-arrestin 2 to MT1 in mitochondria and inhibited oxygen consumption in mitochondria isolated from HEK293 cells only when expressing MT1 and from mouse cerebellum of WT mice but not from MT1-knockout mice. Overall, we developed the first mitochondria-targeted photoactivatable melatonin ligand and demonstrate that melatonin inhibits mitochondrial respiration through mitochondrial MT1 receptors. | Versión del editor: | https://doi.org/10.1016/j.chembiol.2023.07.009 | URI: | http://hdl.handle.net/10261/334379 | DOI: | 10.1016/j.chembiol.2023.07.009 |
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